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Published on: December 11, 2017
Leukocyte redistribution: effects of beta blockers in patients with chronic heart failure
Stephan von Haehling1, Joerg C Schefold, Ewa Jankowska
1Applied Cachexia Research, Dept. of Cardiology, Charité Medical School, Campus Virchow-Clinic, Berlin, Germany. stephan.von.haehling@web.de
Insights
Chronic heart failure (CHF) patients exhibit altered immune cell distribution, with more neutrophils and fewer lymphocytes. This immune shift is more pronounced in patients not taking beta-blockers.
Area of Science:
- Immunology
- Cardiology
- Cellular Biology
Background:
- Pro-inflammatory cytokine overproduction is key in chronic heart failure (CHF) progression.
- Cellular immunity changes and medication impacts in CHF are not well understood.
- Investigating leukocyte redistribution and beta-blocker influence in CHF.
Purpose of the Study:
- To determine if leukocyte redistribution occurs in patients with CHF.
- To examine the impact of beta-blocker therapy on leukocyte distribution in CHF.
Main Methods:
- Prospective study of 75 CHF patients and 20 healthy controls.
- In vitro endotoxin exposure response measurement.
- Flow cytometry for lymphocyte subsets and plasma inflammatory marker analysis.
Main Results:
- CHF patients showed relative lymphopenia (reduced T helper and B cells) and increased neutrophils.
- No overall leukocyte count difference between CHF patients and controls.
- These immune changes were more significant in beta-blocker-naïve CHF patients.
Conclusions:
- CHF is associated with leukocyte redistribution: increased neutrophils and relative lymphopenia.
- Beta-blocker-naïve patients exhibited more pronounced immune alterations.
- The specific mechanisms driving these changes require further investigation.
Background:
Overproduction of pro-inflammatory cytokines is a well established factor in the progression of chronic heart failure (CHF). Changes in cellular immunity have not been widely studied, and the impact of standard medication is uncertain. Here we investigate whether a leukocyte redistribution occurs in CHF and whether this effect is influenced by beta-blocker therapy.
Methodology:
We prospectively studied 75 patients with systolic CHF (age: 68+/-11 years, left ventricular ejection fraction 32+/-11%, New York Heart Association class 2.5+/-0.7) and 20 age-matched healthy control subjects (age: 63+/-10 years). We measured the response of cells to endotoxin exposure in vitro, analysed subsets of lymphocytes using flow cytometry, and assessed plasma levels of the pro-inflammatory markers interleukin 1, 6, tumor necrosis factor-alpha, and soluble tumor necrosis factor receptors 1 and 2.
Principal Findings:
While no differences in the number of leukocytes were noted between patients with CHF and healthy controls, we detected relative lymphopenia in patients with CHF (p<0.001 vs. control), mostly driven by reductions in T helper cells and B cells (both p<0.05). The number of neutrophils was increased (p<0.01). These effects were pronounced in patients who were beta-blocker naïve (32% of all patients with CHF). Increased plasma levels of soluble tumor necrosis receptor-1 correlated with the relative number of lymphocyte subsets.
Conclusions:
In patients with CHF, we detected a redistribution of leukocyte subsets, i.e. an increase in neutrophils with relative lymphopenia. These effects were pronounced in patients who were beta-blocker naïve. The underlying mechanism remains to be elucidated.
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